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Farid Aligolzadeh

Last ned pressefoto
Last ned pressefoto
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Farid Aligolzadeh

Postdoctoral Fellow
Department of Chemistry

farid.aligolzadeh@ntnu.no
216 PTS 2 Valgrinda, Trondheim
Google Scholar
Om Publikasjoner

Om

Farid is interested in a wide range of topics within thermo-fluids science, i.e. fluid mechanics, heat transfer, and thermodynamics. He likes to combine numerical, experimental, and analytical methods to address fundamental questions in thermo-fluids, which are crucial for understanding natural phenomena and engineering applications. Currently, Farid is a Postdoctoral Research Fellow at NTNU Department of Chemistry and PoreLab–Centre of Excellence working with Professor Øivind Wilhelmsen, primarily on the European Research Council (ERC) funded project InterLab, “Unravelling the fundamentals of transport across the vapor-liquid interface”.

Academic background

  • Philosophiae Doctor (PhD) in Thermo-Fluids (Turbulence), Department of Energy and Process Engineering (EPT), Norwegian University of Science and Technology (NTNU), Trondheim, Norway, 2020-2024, Thesis title: Studies of Turbulence in a von Kármán Swirling Flow, Supervisor: Professor James R. Dawson
  • Master of Science (MSc) in Mechanical Engineering (Thermo-Fluids), Department of Mechanical Engineering, Sharif University of Technology, Tehran, Iran, 2016-2018, Thesis title: CFD Simulation and Shape Optimization of Supersonic Ejectors for Refrigeration Applications, Supervisor: Professor Ali Hakkaki-Fard
  • Bachelor of Science (BSc) in Mechanical Engineering (Thermo-Fluids), Department of Mechanical Engineering, University of Tabriz, Tabriz, Iran, 2011-2015

Publikasjoner

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  • Se alle publikasjoner i Cristin

2023

  • Aligolzadeh, Farid; Holzner, Markus; Dawson, James. (2023) Entrainment, detrainment and enstrophy transport by small-scale vortex structures. Journal of Fluid Mechanics
    Academic article

Tidsskriftspublikasjoner

  • Aligolzadeh, Farid; Holzner, Markus; Dawson, James. (2023) Entrainment, detrainment and enstrophy transport by small-scale vortex structures. Journal of Fluid Mechanics
    Academic article

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